Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, sigma) of p-type Bi and Sb tellurides are investigated using a first-principles all-electron density-functional approach. We demonstrate that the carrier concentration, band gap, and lattice constants have an important influence on the temperature behavior of S and that the volume expansion by 5.5% in Sb(2)Te(3) results in an increase in S by 33 mu V/K at 300 K. We argue that in addition to the electronic structure characteristics, the volume also affects the value of S and hence should be considered as an origin of the experimental observations that S can be enhanced by doping Sb(2)Te(3) with Bi (which has a larger ionic size) in Sb sites or by the de...
Coevaporated bismuth-tellurium and antimony-tellurium films were fabricated under various deposition...
The charge transport properties of the low-dimensional thermoelectric materials K2Bi8-xSbxSe13 (02Bi...
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
The thermoelectric transport properties of elemental tellurium are investigated by density functiona...
The demand for energy efficiency has motivated many researchers to seek for novel methods capable of...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
doi: 10.1088/0953-8984/9/2/014The electronic structures of the two thermoelectric materials Bi2Te3 a...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
N-type bismuth telluride sulfide has received attention as a potential thermoelectric material due t...
As a lead-free material, GeTe has drawn growing attention in thermoelectrics, and a figure of merit ...
AbstractTin telluride is a thermoelectric material that enables the conversion of thermal energy to ...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Effects of Ag doping and thermal annealing temperature on thermoelectric transport properties of Bi<...
An experimental investigation of the electronic transport properties of bismuth telluride nanocompos...
Coevaporated bismuth-tellurium and antimony-tellurium films were fabricated under various deposition...
The charge transport properties of the low-dimensional thermoelectric materials K2Bi8-xSbxSe13 (02Bi...
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
The thermoelectric transport properties of elemental tellurium are investigated by density functiona...
The demand for energy efficiency has motivated many researchers to seek for novel methods capable of...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
doi: 10.1088/0953-8984/9/2/014The electronic structures of the two thermoelectric materials Bi2Te3 a...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
N-type bismuth telluride sulfide has received attention as a potential thermoelectric material due t...
As a lead-free material, GeTe has drawn growing attention in thermoelectrics, and a figure of merit ...
AbstractTin telluride is a thermoelectric material that enables the conversion of thermal energy to ...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Effects of Ag doping and thermal annealing temperature on thermoelectric transport properties of Bi<...
An experimental investigation of the electronic transport properties of bismuth telluride nanocompos...
Coevaporated bismuth-tellurium and antimony-tellurium films were fabricated under various deposition...
The charge transport properties of the low-dimensional thermoelectric materials K2Bi8-xSbxSe13 (02Bi...
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...